BARD1的核质穿梭作用有助于其促凋亡活性,并受与BRCA1二聚化的调控。

Nuclear-cytoplasmic shuttling of BARD1 contributes to its proapoptotic activity and is regulated by dimerization with BRCA1.

作者信息

Rodriguez José Antonio, Schüchner Stefan, Au Wendy W Y, Fabbro Megan, Henderson Beric R

机构信息

Westmead Institute for Cancer Research, University of Sydney, Westmead Millennium Institute at Westmead Hospital, Westmead NSW 2145, Australia.

出版信息

Oncogene. 2004 Mar 11;23(10):1809-20. doi: 10.1038/sj.onc.1207302.

Abstract

The breast cancer-associated protein, BARD1, colocalizes with BRCA1 in nuclear foci in the S phase and after DNA damage, and the two proteins form a stable heterodimer implicated in DNA repair, protein ubiquitination, and control of mRNA processing. BARD1 has a BRCA1-independent proapoptotic activity; however, little is known about its regulation. Here, we show that BARD1 localization and apoptotic activity are regulated by nuclear-cytoplasmic shuttling. We identified a functional CRM1-dependent nuclear export sequence (NES) near the N-terminal RING domain of BARD1. The NES forms part of the BRCA1 dimerization domain, and coexpression of BRCA1 resulted in masking of the NES and nuclear retention of BARD1. In transient expression assays, BARD1 apoptotic activity was stimulated by nuclear export, and both apoptotic function and nuclear export were markedly reduced by BRCA1. Similar findings were obtained for endogenous BARD1. Silencing BRCA1 expression by siRNA, or disrupting the endogenous BARD1/BRCA1 interaction by peptide competition caused a reduction in BARD1 nuclear localization and foci formation, and increased the level of cytoplasmic BARD1 correlating with increased apoptosis. Our findings suggest that BRCA1/BARD1 heterodimer formation is important for optimal nuclear targeting of BARD1 and its role in DNA repair and cell survival.

摘要

乳腺癌相关蛋白BARD1在S期和DNA损伤后与BRCA1共定位于核灶,这两种蛋白形成一种稳定的异二聚体,参与DNA修复、蛋白质泛素化以及mRNA加工的调控。BARD1具有不依赖BRCA1的促凋亡活性;然而,其调控机制鲜为人知。在此,我们表明BARD1的定位和凋亡活性受核质穿梭调控。我们在BARD1的N端RING结构域附近鉴定出一个功能性的依赖CRM1的核输出序列(NES)。该NES构成BRCA1二聚化结构域的一部分,BRCA1的共表达导致NES被掩盖以及BARD1的核滞留。在瞬时表达试验中,核输出刺激了BARD1的凋亡活性,而BRCA1则显著降低了其凋亡功能和核输出。内源性BARD1也获得了类似的结果。通过siRNA沉默BRCA1表达,或通过肽竞争破坏内源性BARD1/BRCA1相互作用,导致BARD1核定位和灶形成减少,并增加了细胞质BARD1的水平,这与凋亡增加相关。我们的研究结果表明,BRCA1/BARD1异二聚体的形成对于BARD1的最佳核靶向及其在DNA修复和细胞存活中的作用至关重要。

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